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X-ray focusing with efficient high-NA multilayer Laue lenses

机译:使用高效的高NA多层Laue透镜进行X射线聚焦

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摘要

Multilayer Laue lenses are volume diffraction elements for the efficient focusing of X-rays.With a new manufacturing technique that we introduced,it is possible to fabricate lenses of sufficiently high numerical aperture (NA) to achieve focal spot sizes below 10 nm.The alternating layers of the materials that form the lens must span a broad range of thicknesses on the nanometer scale to achieve the necessary range of X-ray deflection angles required to achieve a high NA.This poses a challenge to both the accuracy of the deposition process and the control of the materials properties,which often vary with layer thickness.We introduced a new pair of materials—tungsten carbide and silicon carbide—to prepare layered structures with smooth and sharp interfaces and with no material phase transitions that hampered the manufacture of previous lenses.Using a pair of multilayer Laue lenses (MLLs) fabricated from this system,we achieved a two-dimensional focus of 8.4 × 6.8 nm2 at a photon energy of 16.3 keY with high diffraction efficiency and demonstrated scanning-based imaging of samples with a resolution well below 10 nm.The high NA also allowed projection holographic imaging with strong phase contrast over a large range of magnifications.An error analysis indicates the possibility of achieving 1 nm focusing.
机译:多层劳厄透镜是用于有效聚焦X射线的体衍射元件。借助我们引入的新制造技术,有可能制造出足够高的数值孔径(NA)的透镜,以实现10 nm以下的焦点尺寸。形成透镜的材料层必须跨越纳米级的宽范围厚度,以实现实现高NA所需的必要X射线偏转角范围,这对沉积工艺的精度和我们引入了一对新材料-碳化钨和碳化硅-来制备具有光滑而尖锐的界面且无材料​​相变的层状结构,这不会妨碍以前的镜片的制造使用该系统制造的一对多层劳厄透镜(MLL),我们在光子能量为o时实现了8.4×6.8 nm2的二维焦点f 16.3 keY,具有高衍射效率,并演示了分辨率远低于10 nm的样品的基于扫描的成像。高NA也使投影全息成像在较大的放大倍率下具有很强的相衬度。误差分析表明有可能实现1 nm聚焦。

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  • 来源
    《光:科学与应用(英文版)》 |2018年第2期|99-107|共9页
  • 作者单位

    Photon Science, DESY, Notkestrasse 85, Hamburg 22607, Germany;

    Photon Science, DESY, Notkestrasse 85, Hamburg 22607, Germany;

    Center for Free-Electron Laser Science, DESY, Notkestrasse 85, Hamburg 22607, Germany;

    Photon Science, DESY, Notkestrasse 85, Hamburg 22607, Germany;

    Center for Free-Electron Laser Science, DESY, Notkestrasse 85, Hamburg 22607, Germany;

    Center for Free-Electron Laser Science, DESY, Notkestrasse 85, Hamburg 22607, Germany;

    Center for Free-Electron Laser Science, DESY, Notkestrasse 85, Hamburg 22607, Germany;

    Photon Science, DESY, Notkestrasse 85, Hamburg 22607, Germany;

    Department of Physics, Arizona State University, Tempe, AZ 85287, USA;

    Faculty of Physics, University of Bialystok, Ciolkowskiego 1L Str., Bialystok 15-245, Poland;

    Center for Free-Electron Laser Science, DESY, Notkestrasse 85, Hamburg 22607, Germany;

    Photon Science, DESY, Notkestrasse 85, Hamburg 22607, Germany;

    Photon Science, DESY, Notkestrasse 85, Hamburg 22607, Germany;

    Photon Science, DESY, Notkestrasse 85, Hamburg 22607, Germany;

    National Synchrotron Light Source II, Brookhaven National Laboratory, Upton, NY 11973, USA;

    National Synchrotron Light Source II, Brookhaven National Laboratory, Upton, NY 11973, USA;

    National Synchrotron Light Source II, Brookhaven National Laboratory, Upton, NY 11973, USA;

    National Synchrotron Light Source II, Brookhaven National Laboratory, Upton, NY 11973, USA;

    Alfred-Wegener Institute, Helmholtz Center for Polar and Marine Research, Bussestr,27,Bremerhaven 27570,Germany;

    Center for Free-Electron Laser Science, DESY, Notkestrasse 85, Hamburg 22607, Germany;

    Center for Free-Electron Laser Science, DESY, Notkestrasse 85, Hamburg 22607, Germany;

    Center for Free-Electron Laser Science, DESY, Notkestrasse 85, Hamburg 22607, Germany;

    Department of Physics, University of Hamburg, Luruper Chaussee 149, Hamburg 22607, Germany;

    Centre for Ultrafast Imaging, Luruper Chaussee 149, Hamburg 22607, Germany;

    Center for Free-Electron Laser Science, DESY, Notkestrasse 85, Hamburg 22607, Germany;

    Center for Free-Electron Laser Science, DESY, Notkestrasse 85, Hamburg 22607, Germany;

    National Science Foundation BioXFEL Science and Technology Center, 700 Ellicott Street, Buffalo, NY 14203, USA;

    Center for Free-Electron Laser Science, DESY, Notkestrasse 85, Hamburg 22607, Germany;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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